Strong electron correlations can give rise to extraordinary properties of metals with renormalized Landau quasiparticles. Near a quantum critical point, these quasiparticles can be destroyed and non-Fermi liquid behavior ensues. YbRh2Si2 is a prototypical correlated metal exhibiting the formation of quasiparticle and Kondo lattice coherence, as well as quasiparticle destruction at a field-induced quantum critical point. Here we show how, upon lowering the temperature, Kondo lattice coherence develops at zero field and finally gives way to non-Fermi liquid electronic excitations. By measuring the single-particle excitations through scanning tunneling spectroscopy, we find the Kondo lattice peak displays a non-trivial temperature dependence w...
Anti-ferromagnetic (AF) heavy-fermion (HF) metals frequently exhibit a quantum critical point (QCP),...
In solids containing elements with f orbitals, the interaction between f-electron spins and those of...
Quantum critical properties of strongly correlated metals in heavy fermion systems are investigated....
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
International audienceRecently there is renewed interest in quantum critical phase transitions (QCPT...
International audienceRecently there is renewed interest in quantum critical phase transitions (QCPT...
The entanglement of quantum states is both a central concept in fundamental physics and a potential ...
The entanglement of quantum states is both a central concept in fundamental physics and a potential ...
The heavy-fermion metal YbRh2Si2 is a weak antiferromagnet below TN = 0.07 K. Application of a low m...
We study quantum phase transitions from easy-plane antiferromagnetic metals to paramagnetic metals i...
The heavy-fermion behavior in intermetallic compounds manifests itself in a quenching of local magne...
Anti-ferromagnetic (AF) heavy-fermion (HF) metals frequently exhibit a quantum critical point (QCP),...
Anti-ferromagnetic (AF) heavy-fermion (HF) metals frequently exhibit a quantum critical point (QCP),...
In solids containing elements with f orbitals, the interaction between f-electron spins and those of...
Quantum critical properties of strongly correlated metals in heavy fermion systems are investigated....
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
Strong electron correlations can give rise to extraordinary properties of metals with renormalized L...
International audienceRecently there is renewed interest in quantum critical phase transitions (QCPT...
International audienceRecently there is renewed interest in quantum critical phase transitions (QCPT...
The entanglement of quantum states is both a central concept in fundamental physics and a potential ...
The entanglement of quantum states is both a central concept in fundamental physics and a potential ...
The heavy-fermion metal YbRh2Si2 is a weak antiferromagnet below TN = 0.07 K. Application of a low m...
We study quantum phase transitions from easy-plane antiferromagnetic metals to paramagnetic metals i...
The heavy-fermion behavior in intermetallic compounds manifests itself in a quenching of local magne...
Anti-ferromagnetic (AF) heavy-fermion (HF) metals frequently exhibit a quantum critical point (QCP),...
Anti-ferromagnetic (AF) heavy-fermion (HF) metals frequently exhibit a quantum critical point (QCP),...
In solids containing elements with f orbitals, the interaction between f-electron spins and those of...
Quantum critical properties of strongly correlated metals in heavy fermion systems are investigated....